Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi

The paper industry is one of the most developed, yet the most polluted industry. Waste paper recycling has increased dramatically in recent times, and will continue to do so in the foreseeable future. The key of recycling process is the successful of the ink removal via deinking process. Considering...

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Main Author: Azmi, Nurul Shafika
Format: Thesis
Language:English
Published: 2018
Online Access:https://ir.uitm.edu.my/id/eprint/38251/1/38251.pdf
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spelling my-uitm-ir.382512023-01-26T09:31:00Z Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi 2018 Azmi, Nurul Shafika The paper industry is one of the most developed, yet the most polluted industry. Waste paper recycling has increased dramatically in recent times, and will continue to do so in the foreseeable future. The key of recycling process is the successful of the ink removal via deinking process. Considering the concern to the environmental problem cause by the conventional deinking process, enzymes are applied. Three different enzymes are applied in the deinking process of recycling routes. Research conducted utilizes commercial lipase, esterase extracted from Cavendish banana(from Musa gene) and cellulase extracted from Solarium lycopersicum (tomato) to deink laser jet printed paper. These enzymes were characterized using different physical parameters; temperature, pH value, concentration and shaking rate via enzymes assay to develop new appropriate environment for maximum ink removal which facilitated by enzymes hydrolysis and floatation process. Result showed all of the enzymes have great potential with crude cellulase was superior compared to the commercial lipase and crude esterase. The highest enzymatic activity of cellulase was6.714U/mL, compared to 2.553U/mL for lipase and 1.819U/mL for esterase, with brighter and cleaner paper produced. The successful of the enzymes application showed on morphological changes by Scanning Electron Microscopy (SEM) which was very satisfying and brightness analysis increased up to 72% for celllulase, 48%for lipase and 39% for esterase. In conclusion, crude extracted cellulase had the highest potential to be apply in biodeinking process compared to crude extracted lipase and commercial lipase. 2018 Thesis https://ir.uitm.edu.my/id/eprint/38251/ https://ir.uitm.edu.my/id/eprint/38251/1/38251.pdf text en public masters Universiti Teknologi MARA (UiTM) Faculty of Chemical Engineering Nik Him, Nik Raikhan
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Nik Him, Nik Raikhan
description The paper industry is one of the most developed, yet the most polluted industry. Waste paper recycling has increased dramatically in recent times, and will continue to do so in the foreseeable future. The key of recycling process is the successful of the ink removal via deinking process. Considering the concern to the environmental problem cause by the conventional deinking process, enzymes are applied. Three different enzymes are applied in the deinking process of recycling routes. Research conducted utilizes commercial lipase, esterase extracted from Cavendish banana(from Musa gene) and cellulase extracted from Solarium lycopersicum (tomato) to deink laser jet printed paper. These enzymes were characterized using different physical parameters; temperature, pH value, concentration and shaking rate via enzymes assay to develop new appropriate environment for maximum ink removal which facilitated by enzymes hydrolysis and floatation process. Result showed all of the enzymes have great potential with crude cellulase was superior compared to the commercial lipase and crude esterase. The highest enzymatic activity of cellulase was6.714U/mL, compared to 2.553U/mL for lipase and 1.819U/mL for esterase, with brighter and cleaner paper produced. The successful of the enzymes application showed on morphological changes by Scanning Electron Microscopy (SEM) which was very satisfying and brightness analysis increased up to 72% for celllulase, 48%for lipase and 39% for esterase. In conclusion, crude extracted cellulase had the highest potential to be apply in biodeinking process compared to crude extracted lipase and commercial lipase.
format Thesis
qualification_level Master's degree
author Azmi, Nurul Shafika
spellingShingle Azmi, Nurul Shafika
Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
author_facet Azmi, Nurul Shafika
author_sort Azmi, Nurul Shafika
title Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
title_short Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
title_full Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
title_fullStr Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
title_full_unstemmed Study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / Nurul Shafika Azmi
title_sort study in the activity of commercial lipase, crude banana esterase and crude tomato cellulase and their application in the deinking of laser jet printed paper waste / nurul shafika azmi
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Chemical Engineering
publishDate 2018
url https://ir.uitm.edu.my/id/eprint/38251/1/38251.pdf
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